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A dynamic visualization approach to the exploration of area-based, spatial-temporal data.

机译:一种动态可视化方法,用于探索基于区域的时空数据。

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摘要

The objective of this research is to develop a methodology for the exploration of area-based, spatial-temporal data to help the analyst obtain insights into the data under investigation. The methodology is based on the combination of the concept of exploratory data analysis and scientific visualization techniques. This research has been carried out at three levels: developing a conceptual framework for spatial data exploration using visualization techniques, developing a series of visualization methods to facilitate the exploration, and implementing a pilot operational system to demonstrate the methodology and to provide a platform for evaluating the methodology.;This dissertation first identifies the characteristics of a visualization system for spatial data exploration. It also distinguishes the exploratory displays from the conventional cartographic displays. A strategy to transfer traditional mapping methods to meet the requirements of visualization for spatial exploration is suggested.;Five visualization tools, termed as modules, have been developed. Each of these modules performs specific tasks for the exploration. The integration of multiple modules gives the analyst more power to explore the data. All of the modules are based on the strong interaction between the analyst and the visualization system. The Interactive Viewing Module provides several functions to help the analyst better interpret the displays generated by other modules. The Geographic Brushing Module is for the investigation of geographic correlation. The Alternagraphic Display Module is designed for the investigation of multiple geographic distributions. The Area Masking Module provides the capability of visualizing geographical movement with choroplethic representation. The Temporal Browsing/Brushing Module is aimed at investigating the temporal aspect of the database using "animated browsing" and "brushing.".;An experimental system has been implemented. It demonstrates the procedures to design the system, to implement the visualization modules, and to use the system. The experiment also reveals some technical constraints on the implementation of the methodology.;This research demonstrates that using visualization techniques for the exploration of spatial-temporal data presents an effective approach to enhancing our capability to understand huge amounts of spatial data. It can be used to enhance the analytical functionality of Geographic Information Systems (GIS).
机译:这项研究的目的是开发一种探索基于区域的时空数据的方法,以帮助分析师获得对所研究数据的见解。该方法基于探索性数据分析和科学可视化技术的结合。这项研究已在三个层次上进行:使用可视化技术开发空间数据勘探的概念框架,开发一系列可视化方法以促进勘探,以及实施试验性操作系统以演示该方法并提供一个评估平台本文首先确定了用于空间数据探索的可视化系统的特征。它还将探索性显示与常规的制图显示区分开来。提出了一种转移传统制图方法以满足空间探索可视化要求的策略。;已开发出五种可视化工具,称为模块。这些模块中的每个模块都执行特定的探索任务。多个模块的集成为分析师提供了更多探索数据的能力。所有模块均基于分析人员与可视化系统之间的强大交互作用。交互式查看模块提供了多种功能,可帮助分析师更好地解释其他模块生成的显示。地理涂刷模块用于调查地理相关性。交替显示模块旨在研究多种地理分布。区域蒙版模块提供了用拟体积表示法可视化地理移动的功能。时间浏览/笔刷模块旨在使用“动画浏览”和“笔刷”来调查数据库的时间方面。已经实现了一个实验系统。它演示了设计系统,实现可视化模块以及使用系统的过程。实验还揭示了该方法实施的一些技术约束。这项研究表明,使用可视化技术探索时空数据是提高我们理解海量空间数据能力的有效方法。它可用于增强地理信息系统(GIS)的分析功能。

著录项

  • 作者

    Tang, Qin.;

  • 作者单位

    The Ohio State University.;

  • 授予单位 The Ohio State University.;
  • 学科 Geography.;Computer Science.;Statistics.;Remote Sensing.
  • 学位 Ph.D.
  • 年度 1993
  • 页码 225 p.
  • 总页数 225
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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